包淳偉

應科中心副主任 研究員
Chun-Wei Pao  Chun-Wei Pao
(Page on ORCID)
Mail cwpaogate.sinica.edu.tw
call 02-2787-3145
ID 0000-0003-0821-7856
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包淳偉

應科中心副主任 研究員
Research Interests
    • Multiscale Simulation of Materials
Narrative CV

包淳偉博士現為中央研究院應用科學研究中心研究員,國立臺灣大學、陽明交通大學、以及國立東華大學之合聘教授,曾任美國洛斯阿拉莫斯國家實驗室理論部博士後研究員。他於普林斯頓大學取得機械與航太工程博士學位,並分別於國立臺灣大學及國立清華大學取得碩士以及學士學位。

包博士專長於計算材料科學,研究涵蓋多尺度模擬、分子動力學與機器學習模型之開發。他於2022年發表於《Nature》之研究揭示超高彈性的化學複雜合金,在其2024年《Nature Communications》的工作中,包博士利用機器學習模型首次進行該超彈性複雜合金中差排行為之大尺度模擬。

包博士於2025年榮獲國科會傑出研究獎,2023年榮獲有庠科技論文獎,亦曾贏得中研院深耕計畫暨前瞻計畫,與IUPAC創新材料獎。他亦積極參與國際社群之學術期刊編輯、研討會籌辦與研究計畫審查等服務。

Education
  • Ph.D. Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA
  • M.A. Department of Mechanical and Aerospace Engineering, Princeton University, Princeton, NJ 08544, USA
  • M.S. Institute of Applied Mechanics, National Taiwan University. Taipei, Taiwan
  • B.S. Department of Power Mechanical Engineering, National Tsing Hua University, Hsin-Chu, Taiwan
Positions and Career
  • 中央研究院應用科學研究中心 副主任 (2026– )
  • 國立台灣大學應用力學所合聘教授 (2024- )
  • 國立陽明交通大學光電工程學系合聘教授 (2020- )
  • 國立東華大學材料系合聘教授 (2018 - )
  • 中央研究院應用科學研究中心 研究員 (2018- )
  • 中央研究院應用科學研究中心 副研究員 (2014 – 2018)
  • 中央研究院應用科學研究中心 助研究員 (2009 – 2014)
  • 美國洛斯阿拉莫斯國家實驗室 博士後研究員 (2007 – 2009)
Honors and Awards
  • 2025 國科會傑出研究獎
  • 2023 有庠科技論文獎
  • 2022 中研院 深耕計畫
  • 2018 IUPAC Distinguish Award for Novel Materials and their Synthesis
  • 2015 中研院 前瞻計畫
  • 2014 青年獎章
  • 2014 國家理論科學中心年輕理論學者獎
  • 2013 國科會優秀年輕學者研究計畫
Selected Publications
  • Po-Yu Yang, Yu-Hsuan Chiang, Chun-Wei Pao*, Chien-Cheng Chang* (2023), "Hybrid Machine Learning-Enabled Potential Energy Model for Atomistic Simulation of Lithium Intercalation into Graphite from Plating to Overlithiation", Journal of Chemical Theory and Computation (in press).
  • Quanfeng He , J.G. Wang , Hsin-An Chen , Z.Y. Ding , Z.Q. Zhou , L.H. Xiong , Junhua Luan , J.M. Pelletier , J.C. Qiao , Q. Wang , L.L. Fan , Yang Ren , Qiaoshi Zeng , Chain Liu , C.W. Pao*, David Srolovitz*, Yong Yang* (2022), "A Highly Distorted Ultra-Elastic Chemically Complex Elinvar Alloy", Nature 602, 251.
  • Q.F. He*, P.H. Tang, H.A. Chen, S. Lan, J.G. Wang, J.H. Luan, M. Du, Y. Liu, C.T. Liu, C.W. Pao*, Y. Yang* (2021), "Understanding chemical short-range ordering/demixing coupled with lattice distortion in solid solution high entropy alloys", Acta Materialia 216, 117140.
  • Hsin-An Chen, Ping-Han Tang, Guan-Jie Chen, Chien-Cheng Chang*, Chun-Wei Pao* (2021), "Microstructure Maps of Complex Perovskite Materials from Extensive Monte Carlo Sampling Using Machine Learning-Enabled Energy Model", Journal of Physical Chemistry Letters 12, 3591.
  • Po-Yu Yang, Chun-Wei Pao (2021), "Molecular Simulations of the Microstructure Evolution of Solid Electrolyte Interphase during Cyclic Charging/Discharging", ACS Applied Materials & Interfaces, 13, 5017.
  • Chih-Hung Chen, Chun-Wei Pao (2021), "Phase-field study of dendritic morphology in lithium metal batteries", Journal of Power Sources 484, 229203
  • Cheng-Lun Wu, Fang-Cheng Li, Chun-Wei Pao*, David J. Srolovitz* (2017), "Folding Sheets with Ion Beams", Nano Letters 17, 249-254.
  • Cheng-Kuang Lee, Chun-Wei Pao* (2016), "Multiscale Molecular Simulation of Solution Processing of SMDPPEH:PCBM Small Molecule Organic Solar Cells", ACS Applied Materials & Interfaces 8, 20691-20700
  • Cheng-Kuang Lee, Chun-Wei Pao*, Chun-Wei Chen (2013), "Correlation of nanoscale organizations of polymer and nanocrystals in polymer/inorganic nanocrystal bulk heterojunction hybrid solar cells: insights from multiscale molecular simulations", Energy & Environmental Science 6, 307.
  • Te-Huan Liu, Grzegorz Gajewski, Chun-Wei Pao*, Chien-Cheng Chang* (2011), "Structure, energy, and structural transformations of graphene grain boundaries from atomistic simulations", CARBON 49, 2306-17.
  • H. Wang, Po-Yu Yang, W.J. Zhao, S.H. Ma, J.H. Hou, Q.F. He, C.L. Wu, H.A. Chen, Q. Wang, Q. Cheng, B.S. Guo, J. C. Qiao, W.J. Lu, S.J. Zhao, X.D. Xu, C.T. Liu, Y. Liu*, Chun-Wei Pao*, Yong Yang* (2024), “Lattice distortion enabling enhanced strength and plasticity in high entropy intermetallic alloy”, Nature Communications 15, 6782.
  • Quanfeng He , J.G. Wang , Hsin-An Chen , Z.Y. Ding , Z.Q. Zhou , L.H. Xiong , Junhua Luan , J.M. Pelletier , J.C. Qiao , Q. Wang , L.L. Fan , Yang Ren , Qiaoshi Zeng , Chain Liu , C.W. Pao*, David Srolovitz*, Yong Yang* (2022), “ A Highly Distorted Ultra-Elastic Chemically Complex Elinvar Alloy”, Nature 602, 251.
  • Hsin-An Chen, Ping-Han Tang, Guan-Jie Chen, Chien-Cheng Chang*, Chun-Wei Pao* (2021), "Microstructure Maps of Complex Perovskite Materials from Extensive Monte Carlo Sampling Using Machine Learning-Enabled Energy Model", Journal of Physical Chemistry Letters 12, 3591.
  • Cheng-Lun Wu, Fang-Cheng Li, Chun-Wei Pao*, David J. Srolovitz* (2017), "Folding Sheets with Ion Beams", Nano Letters 17, 249-254.
  • Cheng-Kuang Lee, Chun-Wei Pao*, Chun-Wei Chen (2013), "Correlation of nanoscale organizations of polymer and nanocrystals in polymer/inorganic nanocrystal bulk heterojunction hybrid solar cells: insights from multiscale molecular simulations", Energy & Environmental Science 6, 307.